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抗菌治疗的进展:专题论文

Advancements in Antibacterial Therapy: Feature Papers.

作者信息

Angeles Flores Giancarlo, Cusumano Gaia, Venanzoni Roberto, Angelini Paola

机构信息

Department of Chemistry, Biology and Biotechnology, University of Perugia, Via del Giochetto, 06122 Perugia, Italy.

Centro di Ricerca per l'Innovazione, Digitalizzazione, Valorizzazione e Fruizione del Patrimonio Culturale e Ambientale (CE.D.I.PA.), Piazza San Gabriele dell'Addolorata, 4, 06049 Spoleto, Italy.

出版信息

Microorganisms. 2025 Mar 1;13(3):557. doi: 10.3390/microorganisms13030557.

Abstract

Antimicrobial resistance (AMR) is a growing global health crisis that threatens the efficacy of antibiotics and modern medical interventions. The emergence of multidrug-resistant (MDR) pathogens, exacerbated by the misuse of antibiotics in healthcare and agriculture, underscores the urgent need for innovative solutions. (1) Background: AMR arises from complex interactions between human, animal, and environmental health, further aggravated by the overuse and inadequate regulation of antibiotics. Conventional treatments are increasingly ineffective, necessitating alternative strategies. Emerging approaches, including bacteriophage therapy, antimicrobial peptides (AMPs), nanotechnology, microbial extracellular vesicles (EVs), and CRISPR-based antimicrobials, provide novel mechanisms that complement traditional antibiotics in combating resistant pathogens. (2) Methods: This review critically analyzes advanced antibacterial strategies in conjunction with systemic reforms such as antimicrobial stewardship programs, the One Health framework, and advanced surveillance tools. These methods can enhance resistance detection, guide interventions, and promote sustainable practices. Additionally, economic, logistical, and regulatory challenges impeding their implementation are evaluated. (3) Results: Emerging technologies, such as CRISPR and nanotechnology, exhibit promising potential in targeting resistance mechanisms. However, disparities in resource distribution and regulatory barriers hinder widespread adoption. Public-private partnerships and sustainable agriculture practices are critical to overcoming these obstacles. (4) Conclusions: A holistic and integrated approach is essential for mitigating the impact of AMR. By aligning innovative therapeutic strategies with global health policies, fostering interdisciplinary collaboration, and ensuring equitable resource distribution, we can develop a sustainable response to this 21st-century challenge.

摘要

抗菌药物耐药性(AMR)是一个日益严重的全球健康危机,威胁着抗生素和现代医学干预措施的疗效。医疗保健和农业中抗生素的滥用加剧了多重耐药(MDR)病原体的出现,凸显了对创新解决方案的迫切需求。(1)背景:AMR源于人类、动物和环境卫生之间的复杂相互作用,抗生素的过度使用和监管不足进一步加剧了这种情况。传统治疗方法越来越无效,因此需要替代策略。包括噬菌体疗法、抗菌肽(AMPs)、纳米技术、微生物细胞外囊泡(EVs)和基于CRISPR的抗菌剂在内的新兴方法提供了新的机制,可在对抗耐药病原体方面补充传统抗生素。(2)方法:本综述批判性地分析了先进的抗菌策略以及抗菌管理计划、“同一健康”框架和先进监测工具等系统性改革。这些方法可以加强耐药性检测、指导干预措施并促进可持续做法。此外,还评估了阻碍其实施的经济、后勤和监管挑战。(3)结果:CRISPR和纳米技术等新兴技术在针对耐药机制方面显示出有前景的潜力。然而,资源分配不均和监管障碍阻碍了其广泛应用。公私伙伴关系和可持续农业做法对于克服这些障碍至关重要。(4)结论:采取全面综合的方法对于减轻AMR的影响至关重要。通过使创新治疗策略与全球卫生政策保持一致、促进跨学科合作并确保公平的资源分配,我们可以对这一21世纪的挑战制定可持续的应对措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d2b/11945154/9cbc4350bf83/microorganisms-13-00557-g001.jpg

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